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Comparative impact assessment study of various hydrogen production methods in terms of emissions

机译:就排放量而言,各种制氢方法的比较影响评估研究

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A comparative environmental impact assessment is performed for different hydrogen production methods. The methods are characterised on the basis of different energy sources such as renewables and fossil fuel. Steam methane reforming (SMR) of natural gas is studied and is categorized under the fossil fuel based hydrogen production. Renewable based hydrogen production includes electrolysis using sodium chlorine cycle. Electrolytic hydrogen production is also compared using membrane cell, diaphragm cell and mercury cell. Wind and solar energy is utilized for electricity generation which is in turn used in electrolytic hydrogen production. The present study uses life cycle assessment (LCA), which is an analytical tool to identify and quantify environmentally critical phases during the life cycle of a system or a product and/or to evaluate and decrease the overall environmental impact of the system or product. The LCA results of the hydrogen production processes indicate that SMR of natural gas has the highest environmental impacts in terms of abiotic depletion, global warming potential, greenhouse gases and other impact categories. The abiotic depletion for SMR is found to be 0.131 kg Sb eq. which is the highest among all methods. The second highest abiotic depletion value is electrolysis using mercury cell which is 0.00786 kg Sb eq. However, thermodynamic results suggest-that SMR is the most efficient method of hydrogen production because the amount of hydrogen energy produced as output in the system is larger than any other method. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:针对不同的制氢方法进行了比较性的环境影响评估。这些方法的特征是基于不同的能源,例如可再生能源和化石燃料。研究了天然气的蒸汽甲烷重整(SMR),并将其归类于以化石燃料为基础的氢气生产。可再生的氢生产包括使用氯酸钠循环的电解。还使用膜池,隔膜池和汞池比较了电解氢的产生。风能和太阳能被用于发电,进而用于电解氢生产。本研究使用生命周期评估(LCA),这是一种分析工具,可以识别和量化系统或产品生命周期中的环境关键阶段,和/或评估和减少系统或产品的整体环境影响。氢气生产过程的LCA结果表明,就非生物耗竭,全球变暖潜力,温室气体和其他影响类别而言,天然气的SMR对环境的影响最大。发现SMR的非生物消耗量为0.131 kg Sb eq。这是所有方法中最高的。非生物耗损值第二高的是使用汞电池的电解,为0.00786 kg Sb eq。但是,热力学结果表明-SMR是最有效的制氢方法,因为系统中作为输出产生的氢能数量比任何其他方法都大。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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